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TCAN844VDDFRQ1

The TCAN844VDDFRQ1 is an electronic component from Texas Instruments. View the full TCAN844VDDFRQ1 datasheet below including key specifications, electrical characteristics, absolute maximum ratings.

Manufacturer

Texas Instruments

Category

CAN Transceivers

Package

SOT-23-8 Thin, TSOT-23-8

Lifecycle

Active

Key Specifications

ParameterValue
Data Rate5Mbps
DuplexHalf
GradeAutomotive
GradeAutomotive
GradeAutomotive
GradeAutomotive
Height1.1 mm
Length2.9 mm
Lifecycle StatusProduction (Last Updated: 4 days ago)
Manufacturer Lifecycle StatusACTIVE (Last Updated: 4 days ago)
Mounting TypeSurface Mount
Number of Drivers/Receivers1/1
Number of Pins8
Operating Temperature-40°C ~ 150°C (TJ)
Package / CaseSOT-23-8 Thin, TSOT-23-8
PackagingMouseReel
PackagingMouseReel
PackagingMouseReel
ProtocolCANbus
QualificationAEC-Q100
QualificationAEC-Q100
QualificationAEC-Q100
QualificationAEC-Q100
Receiver Hysteresis80 mV
Receiver Hysteresis80 mV
Receiver Hysteresis80 mV
Receiver Hysteresis80 mV
RoHSCompliant
Standard Pack Qty3000
Standard Pack Qty3000
Standard Pack Qty3000
Supplier Device PackageTSOT-23-8
Supplier Device PackageTSOT-23-8
Supplier Device PackageTSOT-23-8
Supplier Device PackageTSOT-23-8
Thickness850 µm
TypeTransceiver
TypeTransceiver
TypeTransceiver
TypeTransceiver
Supply Voltage4.75V ~ 5.25V
Width1.6 mm

Overview

The TCAN844-Q1 is a high speed controller area network (CAN) transceiver that is compatible with physical layer requirements of the ISO 11898-2:2024 high-speed CAN specification.

The device includes internal logic level translation via the VIO pin to allow for interfacing the transceiver I/O directly to 3.3V, or 5V logic levels. The transceiver supports a low-power standby mode and wake over CAN which is compatible to the ISO 11898-2:2024 defined wake-up pattern (WUP).

The transceivers also include thermal-shutdown (TSD), TXD-dominant time-out (DTO), supply undervoltage detection, and ±40V bus fault protection. The devices have defined fail-safe behavior in supply undervoltage or floating pin scenarios. These transceivers are not only available in industrystandard SOIC-8 and VSON-8 packages, but also have a space-saving small footprint SOT-23 package option.

Features

  • AEC-Q100 Qualified for automotive applications
  • -Human body model (HBM) ESD protection: ±12KV for CANH and CANL pins as per AEC Q100-002
  • -Charged-device model (CDM) ESD protection: ±500V as per AEC Q100-011
  • -IEC 61000-4-2 Contact discharge: ±8KV (unpowered)
  • Compatible with ISO 11898-2:2024 physical layer standard
  • Functional Safety-Capable
  • -Documentation available to aid in functional safety system design
  • Support of classical CAN and optimized CAN FD performance at 2Mbps and 5Mbps
  • -Short and symmetrical propagation delays for enhanced timing margin
  • TCAN844V-Q1 I/O voltage range supports 2.9V to 5.25V
  • Support for 12V battery applications
  • Receiver common mode input voltage: ±12V
  • Protection features:
  • -Bus fault protection: ±40V
  • -Undervoltage protection
  • -TXD-dominant time-out (DTO)
  • -Thermal-shutdown protection (TSD)
  • Operating modes:
  • -Normal mode
  • -Low power standby mode supporting remote wake-up request
  • Optimized behavior when unpowered
  • -Bus and logic pins are high impedance (no load to operating bus or application)
  • -Hot-plug capable: power up/down glitch-free operation on bus and RXD output
  • 8-Pin SOIC, small footprint SOT-23 and leadless VSON-8 package with improved automated optical inspection (AOI) capability

Applications

Pin Configuration

Figure 4-1. DDF Package, 8-Pin SOT (Top View)

Figure 4-1. DDF Package, 8-Pin SOT (Top View)

Figure 4-2. D Package, 8-Pin SOIC (Top View)

Figure 4-3. DRB Package, 8-Pin VSON (Top View)

Electrical Characteristics

Over recommended operating conditions with TJ = -40°C to 150°C (unless otherwise noted)

PARAMETERPARAMETERTEST CONDITIONSMINTYPMAXUNIT
Driver Electrical CharacteristicsDriver Electrical CharacteristicsDriver Electrical CharacteristicsDriver Electrical CharacteristicsDriver Electrical CharacteristicsDriver Electrical CharacteristicsDriver Electrical Characteristics
V CANH(D)Bus output voltage (dominant) CANHV TXD = 0V, R L = 50Ω to 65Ω, C L = open, R CM = open2.754.5V
V CANL(D)Bus output voltage (dominant) CANLV TXD = 0V, R L = 50Ω to 65Ω, C L = open, R CM = open0.52.25V
V CANH(R) V CANL(R)Bus output voltage (recessive)V TXD = V CC , R L = open (no load), R CM = open23V
V SYMDriver symmetry (V O(CANH) + V O(CANL) )/V CCSTB = 0 V, R L = 60Ω, C SPLIT = 4.7nF, C L = open, R CM = open, TXD = 250kHz, 1MHz, 2.5MHz0.91.1V/V
V SYM_DCDC output symmetry (V CC - V O(CANH) - V O(CANL) )R L = 60Ω, C L = open-400400mV
V DIFF(D)Differential output voltage normal modeTXD = 0V, 50Ω ≤ R L ≤ 65Ω, C L = open1.53V
TXD = 0V, 45Ω ≤ R L ≤ 70Ω, C L = open1.43.3V
DominantTXD = 0V, R L = 2240Ω, C L = open1.55V
V DIFF(R)Differential output voltageTXD = V CC or V IO , R L = 60Ω, C L = open-12012mV
normal mode RecessiveNormal mode, TXD = V CC or V IO , R L = open, C L = open-5050mV
V CANH(INACT)Bus output voltage on CANH with bus biasing inactiveV TXD = V CC or V IO , R L = open, C L = open, R CM = open-0.10.1V
V CANL(INACT)Bus output voltage on CANL with bus biasing inactiveV TXD = V CC or V IO , R L = open, C L = open, R CM = open-0.10.1V
V DIFF(INACT)Bus output voltage on CANH - CANL (recessive) with busV TXD = V CC or V IO , R L = open, C L = open, R CM = open-0.20.2V
I CANH(OS)biasing inactive Short-circuit steady-state-3.0V ≤ V CANH ≤ +18.0V, CANL = open, V TXD = 0V-115mA
I CANL(OS)output current, Dominant-3.0V ≤ V CANL ≤ +18.0V, CANH = open, V TXD = 0V115mA
I OS_RECShort-circuit steady-state output current; Recessive-40V ≤ V BUS ≤ +40V, V BUS = CANH = CANL-55mA
Receiver Electrical CharacteristicsReceiver Electrical CharacteristicsReceiver Electrical CharacteristicsReceiver Electrical CharacteristicsReceiver Electrical CharacteristicsReceiver Electrical CharacteristicsReceiver Electrical Characteristics
V DIFF_RX(D)Receiver dominant state differential input voltage range, bus biasing active-12V ≤ V CANL ≤ +12V -12V ≤ V CANH ≤ +12V0.98V
V DIFF_RX(R)Receiver recessive state differential input voltage range, bus biasing active-12V ≤ V CANL ≤ +12V -12V ≤ V CANH ≤ +12V-30.5V
V HYSHysteresis voltage for input threshold, normal mode-12V ≤ V CM ≤ +12V808080mV
V DIFF_RX(D_INA CT)Receiver dominant state differential input voltage range, bus biasing in-active-12V ≤ V CANL ≤ +12V -12V ≤ V CANH ≤ +12V1.158V
V DIFF_RX(R_INA CT)Receiver recessive state differential input voltage range, bus biasing in-active-12V ≤ V CANL ≤ +12V -12V ≤ V CANH ≤ +12V-30.4V
V CMCommon mode range:-1212V
I LKG(IOFF)Power-off (unpowered) bus input leakage currentCANH = CANL = 5 V, V CC = V IO = GND5μA
CI powered NormalInput capacitance to ground (CANH or CANL)TXD = V CC , V IO = V CC20pF
C ID powered NormalDifferential input capacitanceTXD = V CC , V IO = V CC10pF
R DIFFDifferential input resistance during recessive stateV TXD = V CC or V IO , normal mode: -2.0V ≤ V CANH ≤ +7.0V; -2.0V ≤ V CANL ≤ +7.0V1890
R SE_CANH R SE_CANLSingle-ended input resistance during recessive state-2V ≤ V CANH ≤ +7V -2V ≤ V CANL ≤ +7V945

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Absolute Maximum Ratings

over operating free-air temperature range (unless otherwise noted) (1) (2)

MINMAXUNIT
V CCSupply voltage-0.36V
V IOSupply voltage I/O level shifter-0.36V
V BUSCAN Bus I/O voltage (CANH, CANL)-4040V
V DIFFMax differential voltage range between CANH and CANL-4040V
V Logic_InputLogic input terminal voltage-0.36V
V RXDRXD output terminal voltage range-0.36V
I O(RXD)RXD output current-88mA
T JOperating virtual junction temperature range-40165°C
T STGStorage temperature-65150°C

Recommended Operating Conditions

MINNOMMAXUNIT
V CCSupply voltage4.7555.25V
V IOSupply voltage for I/O level shifter2.95.25V
I OH(RXD)RXD terminal high level output current-2mA
I OL(RXD)RXD terminal low level output current2mA
T JOperational free-air temperature (see thermal characteristics table)-40150°C

Thermal Information

TCAN844(V)-Q1TCAN844(V)-Q1TCAN844(V)-Q1UNIT
THERMAL METRICTHERMAL METRICD (SOIC)DRB (VSON)DDF (SOT23)UNIT
R θJAJunction-to-ambient thermal resistance130.167.7180.5°C/W
R θJC(top)Junction-to-case (top) thermal resistance72.377.294.4°C/W
R θJBJunction-to-board thermal resistance79.540.393.3°C/W

Typical Application

The TCAN844(V)-Q1 transceiver can be used in applications with a host controller or FPGA that includes the link layer portion of the CAN protocol. Figure 8-1 shows a typical configuration for 5V controller applications. The bus termination is shown for illustrative purposes.

Package Information

PART NUMBERPACKAGE (1)PACKAGE SIZE (2)
TCAN844-Q1SOIC (D)4.9mm × 6mm
TCAN844-Q1VSON (DRB)3mm × 3mm
TCAN844-Q1SOT-23 (DDF)2.9mm × 2.8mm
  • (1) For more information, see Section 11.
  • (2) The package size (length × width) is a nominal value and includes pins, where applicable.

Related Variants

The following components are covered by the same datasheet.

Part NumberManufacturerPackage
TCAN844Texas Instruments
TCAN844-Q1Texas Instruments
TCAN844DDFRQ1Texas InstrumentsSOT-23-8 Thin, TSOT-23-8
TCAN844DRBRQ1Texas Instruments8-VDFN Exposed Pad
TCAN844DRQ1Texas Instruments8-SOIC (0.154", 3.90mm Width)
TCAN844DRQ1.ATexas Instruments
TCAN844VTexas Instruments
TCAN844V-Q1Texas Instruments
TCAN844VDRBRQ1Texas Instruments8-VDFN Exposed Pad
TCAN844VDRQ1Texas Instruments8-SOIC (0.154", 3.90mm Width)
TCAN844VDRQ1.ATexas Instruments
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